• DocumentCode
    43807
  • Title

    Development of a Control Strategy of Variable Speed Limits to Reduce Rear-End Collision Risks Near Freeway Recurrent Bottlenecks

  • Author

    Zhibin Li ; Pan Liu ; Wei Wang ; Chengcheng Xu

  • Author_Institution
    Jiangsu Key Lab. of Urban ITS, Southeast Univ., Nanjing, China
  • Volume
    15
  • Issue
    2
  • fYear
    2014
  • fDate
    Apr-14
  • Firstpage
    866
  • Lastpage
    877
  • Abstract
    The primary objective of this paper was to develop a control strategy of variable speed limits (VSLs) to reduce rear-end collision risks near freeway recurrent bottlenecks. The risks of rear-end collisions were estimated using a crash risk prediction model that is specifically developed for rear-end collisions in freeway bottleneck areas. The effects of the VSL control strategy were evaluated using a cell transmission model. Several control factors were tested, including the start-up threshold of the collision likelihood, the target speed limit, the speed change rate, and the speed difference between adjacent links. A genetic algorithm was used to optimize critical control factors. For the high demand scenario, the proposed control strategy used 25% of the maximum collision likelihood for the start-up threshold, 35 mi/h for the target speed limit, 10 mi/h per 30 s for the speed change rate, and 10 mi/h for the speed difference between different links. For the moderate demand scenario, the strategy used 20% of the maximum collision likelihood for the start-up threshold, 40 mi/h for the target speed limit, 15 mi/h per 30 s for the speed change rate, and 10 mi/h for the speed difference between different links. The results of comparative analyses suggested that the proposed control strategy outperformed other strategies in reducing the rear-end collision risks near freeway recurrent bottlenecks. With the proposed control strategy, the VSL control reduced the rear-end crash potential by 69.84% for the high demand scenario and by 81.81% for the moderate demand scenario.
  • Keywords
    collision avoidance; risk management; road traffic control; road vehicles; VSL; cell transmission model; control strategy development; crash risk prediction model; freeway recurrent bottlenecks; genetic algorithm; rear-end collision risks reduction; variable speed limits; Computer crashes; Detectors; Kinematics; Predictive models; Safety; Traffic control; Vehicles; Control strategy; rear-end collision; recurrent bottleneck; safety; variable speed limits (VSLs);
  • fLanguage
    English
  • Journal_Title
    Intelligent Transportation Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1524-9050
  • Type

    jour

  • DOI
    10.1109/TITS.2013.2293199
  • Filename
    6698293